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A direct physical interaction between Nanog and Sox2 regulates embryonic stem cell self-renewal

机译:Nanog和Sox2之间的直接物理相互作用调节胚胎干细胞的自我更新

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摘要

Embryonic stem (ES) cell self-renewal efficiency is determined by the Nanog protein level. However, the protein partners of Nanog that function to direct self-renewal are unclear. Here, we identify a Nanog interactome of over 130 proteins including transcription factors, chromatin modifying complexes, phosphorylation and ubiquitination enzymes, basal transcriptional machinery members, and RNA processing factors. Sox2 was identified as a robust interacting partner of Nanog. The purified Nanog–Sox2 complex identified a DNA recognition sequence present in multiple overlapping Nanog/Sox2 ChIP-Seq data sets. The Nanog tryptophan repeat region is necessary and sufficient for interaction with Sox2, with tryptophan residues required. In Sox2, tyrosine to alanine mutations within a triple-repeat motif (S X T/S Y) abrogates the Nanog–Sox2 interaction, alters expression of genes associated with the Nanog-Sox2 cognate sequence, and reduces the ability of Sox2 to rescue ES cell differentiation induced by endogenous Sox2 deletion. Substitution of the tyrosines with phenylalanine rescues both the Sox2–Nanog interaction and efficient self-renewal. These results suggest that aromatic stacking of Nanog tryptophans and Sox2 tyrosines mediates an interaction central to ES cell self-renewal.
机译:胚胎干(ES)细胞的自我更新效率取决于Nanog蛋白水平。但是,Nanog的蛋白伴侣具有指导自我更新的功能尚不清楚。在这里,我们确定了130多种蛋白质的Nanog相互作用基因组,包括转录因子,染色质修饰复合物,磷酸化和泛素化酶,基础转录机制成员和RNA加工因子。 Sox2被确定为Nanog的强大相互作用伙伴。纯化的Nanog-Sox2复合物鉴定出存在于多个重叠的Nanog / Sox2 ChIP-Seq数据集中的DNA识别序列。 Nanog色氨酸重复区域对于与Sox2相互作用是必需的,并且足够,需要色氨酸残基。在Sox2中,三重重复基序(SXT / SY)中的酪氨酸突变为丙氨酸消除了Nanog-Sox2的相互作用,改变了与Nanog-Sox2同源序列相关的基因的表达,并降低了Sox2拯救ES细胞分化诱导的能力。通过内源性Sox2缺失。用苯丙氨酸替代酪氨酸可挽救Sox2–Nanog相互作用和有效的自我更新。这些结果表明Nanog色氨酸和Sox2酪氨酸的芳香堆叠介导了ES细胞自我更新的核心相互作用。

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